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M-Estimator Based Robust Coarray Interpolation for DOA Estimation with Miscalibrated Sensors

机译:基于M估计的MIS频繁传感器的DOA估计的鲁棒COARRAY插值

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This paper proposes a robust signal interpolation approach for direction-of-arrival (DOA) estimation when several sensors in a coprime array are not properly calibrated. In such case, the conventional interpolation approaches will lead to an inaccurate or even failed DOA estimation. In our proposed approach, observations obtained from the sensors without calibration are blindly treated as outliers. The interpolation problem is formulated as an atomic norm minimization (ANM) problem, where the M-estimator is employed as the regularization term to reduce the adverse impact of outliers. The DOA estimation results can be thus robustly obtained by applying the interpolated virtual signal matrix. Numerical experiments verify that our interpolation algorithm outperformance existing array interpolation methods in terms of robustness.
机译:本文提出了一种稳健的信号插值方法,用于到达方向(DOA)估计,当没有正确校准COPRIME阵列中的几个传感器时。在这种情况下,传统的插值方法将导致不准确甚至失败的DOA估计。在我们所提出的方法中,从传感器获得的观察,没有校准被盲目地被视为异常值。插值问题被制定为原子标准最小化(ANM)问题,其中M估算器被用作正则化术语,以降低异常值的不利影响。因此,可以通过应用内插的虚拟信号矩阵来稳健地获得DOA估计结果。数值实验验证了我们的插值算法在鲁棒性方面优于现有的阵列插值方法。

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